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EXPANSION AND FRACTURE OF FRAGMENTING WARHEAD SHELLS OF VARIOUS MATERIALS UNDER A CL-20 EXPLOSIVE CHARGE

机译:CL-20爆炸电荷下各种材料片段弹头壳的膨胀与骨折

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To study the effect of the warhead material characteristics upon warhead expansion and fracture and upon the formation of fragments under a high-power explosive charge, four different warhead materials; 30CrMnSiNi2A steel, 40CrMnSiB steel, 50SiMnVB steel and 82 steel; are examined. This paper builds a analytical modeling to theoretically analyze the expansion and fracture processes for the different material warheads. In addition, the AUTODYN-3D finite element software is used to numerically simulate the expansion and fracture processes of the four materials, and high-speed photography technology and a tinfoil target velocity test system are used to verify the simulation results. It is found that, for the “ Φ 62mm” aperture warhead under the explosive CL-20 charge, the expansion and fracture processes of the four materials all require Φ60 μs, and the shell expansion velocity in the whole process can be divided into three stages called libration, acceleration and stabilized. The initial velocities of the fragments along the warhead axis for the different warhead materials are consistent with each other, though the expansion velocity and the maximum initial velocity of the fragments are largest for the 30CrMnSiNi2A steel warhead. It is found that the warhead expansion velocity and the initial velocity of the fragments decrease gradually as the ultimate tensile strength of the warhead material decreases and as its dynamic fracture toughness increases. This study introduces the coefficient of radial warhead expansion and acquires the function for the distance of the radial warhead expansion over time, which is influenced by the warhead material characteristics. The results of this study will provide a reference for fragmenting warhead shell material selection and design.
机译:为了研究弹头材料特征对弹头膨胀和骨折的影响,以及在高功率爆炸电荷下形成碎片,四种不同的弹头材料; 30crmnsini2a钢,40crmnsib钢,50simnvb钢和82钢;检查。本文建立了一个分析模型,从理论上分析了不同材料弹头的膨胀和断裂过程。此外,Autodyn-3d有限元件软件用于数值上模拟四种材料的膨胀和断裂过程,以及高速摄影技术和烟灰目标速度测试系统用于验证仿真结果。结果发现,对于在爆炸C1-20下的“φ62mm”光圈下,四种材料的膨胀和断裂过程都需要φ60μs,并且整个过程中的壳膨胀速度可分为三个阶段称为Libration,加速和稳定。沿着弹头轴的片段的初始速度彼此一致,尽管碎片的膨胀速度和碎片的最大初始速度对于30crmnsini2a钢弹头最大。发现弹头膨胀速度和片段的初始速度随着弹头材料的最终拉伸强度而降低并且随着其动态断裂韧性增加而逐渐降低。本研究介绍了径向弹头膨胀系数,并在随着时间的推移,获取径向弹头膨胀距离的距离的功能,这受弹头材料特性的影响。该研究的结果将为支离弹头壳材料选择和设计提供参考。

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